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Furnace Product List and Ranking from 407 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Aug 05, 2026~Sep 01, 2026
This ranking is based on the number of page views on our site.

Furnace Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Aug 05, 2026~Sep 01, 2026
This ranking is based on the number of page views on our site.

  1. テクノファイアリング Gifu//Manufacturing and processing contract
  2. サーモニックENG Chiba//Other manufacturing
  3. DOWAサーモテック Aichi//Ferrous/Non-ferrous metals
  4. 4 ナガノ Tokyo//Industrial Electrical Equipment
  5. 5 TPR商事 Tokyo//others

Furnace Product ranking

Last Updated: Aggregation Period:Aug 05, 2026~Sep 01, 2026
This ranking is based on the number of page views on our site.

  1. Leave entrusted firing and commissioned firing to us. テクノファイアリング
  2. Technical consultation service for those who are unsure about selecting electric furnaces. サーモニックENG
  3. Metal Hot Zone High-Temperature Vacuum Furnace Vacuum Sintering Furnace (Metal Furnace) DOWAサーモテック
  4. 4 [Case Study of High-Temperature Furnace] Achieving firing at up to 2,000℃ and shortening test cycles. ナガノ
  5. 5 Guide to Introducing Far Infrared Tabletop Heaters [Free Case Study Available] TPR商事

Furnace Product List

1471~1500 item / All 1577 items

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Pre-introduction firing test of equipment | Confirming condition exploration, safety, and mass production deployment

Before deciding on the equipment specifications, confirm the reactivity with a small sample.

Before deciding on the specifications for electric furnaces and atmosphere furnaces, have you organized the conditions that should be confirmed through firing tests? In firing tests conducted before equipment installation, it is important to verify whether "the desired reaction occurs," "it can be processed safely," and "it can be scaled up to mass production conditions" using small sample sizes. This document organizes the planning items for confirming reactivity, safety, and reproducibility by varying temperature, atmosphere, processing time, flow rate, and pressure, focusing on processes such as firing, debinding, reduction, oxidation, nitriding, degassing, and impurity removal. ■ For exploring conditions before equipment installation ■ To prevent omissions in firing test planning ■ For consideration of furnace volume, gas systems, exhaust gas treatment, and jig specifications ■ For making scale-up decisions to mass production furnaces

  • Industrial Furnace
  • Furnace

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Differences between sintering, heat treatment, degreasing, and reduction | Selecting electric furnaces by purpose

Organize electric furnaces suitable for sintering, heat treatment, degreasing, and reduction.

Are you able to organize the differences between firing, heat treatment, degreasing, and reduction? Even with the same "heat treatment," the necessary temperature range, atmosphere, exhaust gas measures, safety measures, temperature distribution, and sample collection methods change depending on the purpose. For example, in firing, reaction completion and temperature distribution are important; in degreasing, generated gases, tar, and rapid reactions are critical; in reduction, H₂ concentration, substitution management, and explosion limits are key; and in heat treatment, uniformity, cooling conditions, and high-purity atmosphere are essential. This document organizes the representative conditions, main atmospheres, key points, suitable types of furnaces, and pre-check items for firing, heat treatment, degreasing, and reduction in a list format. ■ For selecting electric furnaces and atmosphere furnaces that match the treatment purpose ■ For organizing conditions before equipment installation ■ For preliminary consideration of firing tests and condition exploration ■ Can be used as internal confirmation materials before requesting estimates

  • Industrial Furnace
  • Furnace

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How to Choose an Electric Furnace for Research and Development | Suitable for Prototyping, Condition Exploration, and Small-Scale Firing

Check the specifications of the electric furnace needed for trial production and condition exploration.

Are you selecting electric furnaces for research and development solely based on maximum temperature? In research and development, particularly in material development, there are cases where you want to compare multiple conditions of temperature, time, and atmosphere while the firing conditions are not yet established. Additionally, challenges may arise such as having a small sample size, wanting to use atmospheres like N₂, Ar, H₂, NH₃, O₂, vacuum, or humidified air, and needing to check safety aspects like powder dispersion, gas generation, corrosion, and explosion limits. This document organizes the specifications that should be confirmed when considering electric furnaces for research and development, as well as guidelines for selecting furnace types based on purpose. ■ For selecting electric furnaces in the research and development and material development stages ■ For initial considerations in prototyping, condition exploration, and small-scale firing ■ For considering firing tests in multiple atmospheres ■ For organizing specifications before requesting estimates ■ Can be used as internal discussion material before equipment introduction Even at a stage where conditions are not yet determined, we will propose ways to proceed with firing tests and equipment specifications based on sample shape, temperature range, and atmospheric conditions.

  • Industrial Furnace
  • Furnace

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Selection of O₂・Air Atmosphere Sintering Furnace | Compatible with Oxidation, Degreasing, and Pyrolysis Evaluation

Organize the types of furnaces suitable for oxidation, degreasing, and pyrolysis, along with exhaust measures.

Are you considering evaluating oxidation firing, debinding, and thermal decomposition in an O₂・Air atmosphere? For processing in an O₂・Air atmosphere, we focus on using tube furnaces for confirming the reaction behavior of small samples, while multi-atmosphere furnaces are primarily used for evaluating a variety of samples such as powders, substrates, and components with significant debinding amounts. In particular, for debinding and thermal decomposition, it is important to consider the generation of organic components, CO/CO₂, moisture, odors, and dust, and to include specifications that cover not only the furnace body but also the exhaust line, safety measures, and treatment of generated gases. This document organizes the differentiation between tube furnaces and multi-atmosphere furnaces for O₂・Air atmosphere firing, items to be confirmed in advance, and considerations for exhaust and safety measures. ■ For selecting furnace types for oxidation firing, debinding, and thermal decomposition evaluation ■ For confirming the differentiation between tube furnaces and multi-atmosphere furnaces ■ For confirming the reaction behavior of small samples ■ For evaluating the debinding of powders, substrates, and components ■ For firing tests and condition exploration before equipment installation

  • Industrial Furnace
  • Furnace

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Selection of furnace for Cl₂・HCl special atmosphere sintering | Corresponding to chlorination reaction and corrosion evaluation

Organize the firing conditions and safety specifications using corrosive gases.

Are you considering sintering, chlorination reactions, and corrosion evaluation in a special atmosphere such as Cl₂ and HCl? In sintering using corrosive and reactive gases like Cl₂ and HCl, it is necessary to consider specifications not only for temperature and gas concentration but also for materials inside the furnace, jig materials, sealing materials, piping, valves, exhaust piping, pollution control devices, and safety interlocks. In particular, for chlorination reactions and volatile separation, the volatility of the generated chlorides, condensation location, recovery methods, insulation of exhaust piping, and pollution control capabilities are important. Additionally, since corrosive gases are handled, leak prevention measures, gas detection, exhaust routes, and safety shutdown conditions significantly impact equipment specifications. This document organizes the treatment objectives, gas conditions, furnace type selection, and key points for confirming jigs, piping, exhaust, pollution control, and safety measures in Cl₂ and HCl special atmosphere sintering. - For sintering and reaction evaluation in Cl₂ and HCl atmospheres - For consideration of chlorination reactions, volatile separation, and impurity removal - For removal of deposits from jigs and components, and evaluation of corrosion and durability - For insulation of exhaust, condensation measures, and specification review of pollution control devices - For sintering tests and condition exploration before equipment installation

  • Industrial Furnace
  • Furnace

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Global market size of vacuum aluminum brazing furnaces (VAB)

This report systematically analyzes the medium to long-term growth trends of the vacuum aluminum brazing furnace (VAB) market from both quantitative and qualitative perspectives.

This document provides an explanation of the global market size for vacuum aluminum brazing furnaces (VAB). It covers an overview of vacuum aluminum brazing furnaces (VAB), analysis by product type, analysis by application, analysis by company, analysis by region, technological innovations, and future market outlook. Our company, based in Tokyo, integrates industrial information from around the world and provides reports to support corporate decision-making. *For more details, please download the PDF or feel free to contact us.*

  • others
  • Furnace

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Global Market Size of Metallurgical Furnaces

This report systematically organizes the medium to long-term growth trends of the metallurgical furnace market through both quantitative and qualitative analyses.

This document provides an explanation of the global market size for metallurgical furnaces. It covers an overview of metallurgical furnaces, analysis by product type, analysis by application, analysis by company, analysis by region, technological innovations, and future market outlook. Our company, based in Tokyo, integrates industrial information from around the world and provides reports to support corporate decision-making. *For more details, please download the PDF or feel free to contact us.*

  • others
  • Furnace

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Global market size of aluminum alloy melting and holding furnaces.

This report systematically organizes the medium- to long-term growth trends of the aluminum alloy melting and holding furnace market through both quantitative and qualitative analyses.

This document provides an explanation of the global market size for aluminum alloy melting and holding furnaces. It covers an overview of aluminum alloy melting and holding furnaces, including analysis by product type, application, company, region, technological innovations, and future market outlook. Our company, based in Tokyo, integrates industrial information from around the world and provides reports to support corporate decision-making. *For more details, please download the PDF or feel free to contact us.*

  • others
  • Furnace

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Three Major Features of the Tornado: <Hot Air Circulation Mechanism>

Pursuing cost reduction! After heating in the furnace, there is no need to reheat the outside air due to the circulation structure.

The "hot air circulation mechanism" controls heat and airflow by circulating hot air, maintaining a consistent overall temperature distribution, and evenly directing airflow onto the workpiece (product). After the temperature rises inside the furnace, there is no need to reheat outside air due to the circulation structure. Power consumption is 2/3 (compared to our company), and there is no need for a dryer or double pass. Please feel free to contact us when you need assistance. 【Features】 ■ Maintains a consistent overall temperature distribution ■ Can direct airflow evenly ■ No need to reheat outside air ■ Power consumption is 2/3 (compared to our company) ■ No dryer or double pass required *For more details, please refer to the PDF document or feel free to contact us.

  • Shrink Wrapping Machine
  • Furnace

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Important processes and technical points from spring re-tempering to painting.

[Reprint Private Spring Preparatory School Lecture 63] An explanation of changes in mechanical properties due to re-burning and the effects of time!

Tempering is a heat treatment for materials that have completed quenching, aimed at providing the most suitable toughness for the spring, making it the most important process for springs. Therefore, the furnace used for this process must be able to accurately match the desired temperature, ideally within plus or minus 5 degrees. Of course, it is preferable for the temperature distribution within the furnace to be uniform. The changes in mechanical properties due to tempering vary with temperature and holding time, but the influence of time is relatively minor. *For detailed content, please refer to the PDF. For more information, feel free to contact us.*

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Heat Recovery Type Hot Air Drying Furnace DRYTEC

Heat recovery type hot air drying furnace that achieves improved coating quality, energy savings, and safety.

Do you have any of these concerns? ✓ Occurrence of uneven burning or color variations ✓ Want to improve painting defects such as yellowing or whitening ✓ Want to reduce fuel costs for drying ovens ✓ Considering switching to water-based paint ✓ Want to improve the safety of hazardous material painting processes ✓ Looking for drying equipment that can be used in clean rooms ✓ Looking for explosion-proof drying equipment ✓ Want to accommodate future expansions or relocations DRYTEC will solve these issues! DRYTEC is a dedicated hot air drying oven for painting that employs a unique heat exchanger system and indirect heating method. With a high safety design that prevents combustion gases and sparks from entering the oven, it is suitable for hazardous material painting. By reusing exhaust heat energy, it achieves reduced running costs and lower environmental impact. Maintaining a uniform temperature inside the oven contributes to stabilizing the quality of the paint film and helps reduce painting defects such as yellowing, whitening, blushing, and gas checking. It supports the drying of solvent-based paints, water-based paints, and powder coatings. This high-performance drying oven can flexibly accommodate clean room installations, relocations, and expansions. It is also ideal for customers looking for painting drying ovens, curing drying ovens, energy-saving drying ovens, and water-based paint drying equipment.

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Contract Analysis Services: Thermal Analysis

We will determine the temperature distribution of the structure, the incoming (outgoing) heat quantity, temperature gradient, heat flux, etc.

[Contracted Analysis Services] Thermal analysis involves determining the temperature distribution, incoming (or outgoing) heat, temperature gradients, heat flux, and so on of structures. It is also possible to conduct analyses to determine the deformation and stress of structures by refining the obtained temperature distribution. For more details, please contact us or refer to the catalog.

  • Other operation management software
  • Integrated operation management
  • Furnace

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Chubu Nippon Furnace Co., Ltd. Equipment Introduction

A well-equipped environment unique to an industrial furnace manufacturer! As a specialized manufacturer, there are things we can do.

We would like to introduce the equipment owned by Chūnippōn Rōkōgyō Co., Ltd. We have a "horizontal vacuum heat treatment furnace" suitable for small lot products and mold components, a "three-chamber continuous vacuum heat treatment furnace" for mass production parts, an "oil-cooled vacuum heat treatment furnace" for oil-cooled steel, a "vacuum replacement vacuum heat treatment furnace" dedicated to tempering, a "thermal CVD device" with a TiC three-layer structure, a sub-zero device for preventing aging changes, and a "vacuum degreasing cleaning device" for degreasing cleaning, among others. Please feel free to contact us when you need our services. 【Equipment Owned (Partial)】 ■ Horizontal Vacuum Heat Treatment Furnace - NVF-30P - NVF-50P - NVF-50PC - NVF-200PC - NVF-500P *For more details, please refer to the related links or feel free to contact us.

  • Industrial Furnace
  • Furnace

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Vacuum Carburizing Furnace 'Z-TKM' for Aerospace Applications

Achieving zero CO2 emissions and weight reduction! Contributing to the heat treatment of aerospace components.

In the aerospace industry, reducing the weight of components is essential for improving fuel efficiency and reducing environmental impact. At the same time, high strength and durability are required. The vacuum carburizing furnace 'Z-TKM' provides heat treatment that meets these demands. It contributes to the performance enhancement of aerospace components through high-quality heat treatment while significantly reducing CO2 emissions. 【Application Scenarios】 * Heat treatment of aircraft components (engine parts, structural members, etc.) * Heat treatment of space rocket components * Manufacturing of high-strength components aimed at weight reduction 【Benefits of Implementation】 * Environmental contribution through significant reduction of CO2 emissions * Manufacturing of components that achieve both weight reduction and high strength * Cost reduction and increased productivity

  • Other surface treatment equipment
  • Furnace

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Vacuum Soldering Batch Furnace "PH-224-S Type"

You can obtain the data necessary for process verification (analog output).

The vacuum soldering batch furnace "PH-224-S type" is a small batch furnace type, ideal for small quantities and research and development. It uses a thin heater as the heating source, enabling high-speed temperature profile processes. The temperature controller, being a dedicated type, can obtain the necessary data for process verification (analog output). 【Features】 ○ The work state is visible through the observation window. ○ Air-cooled, supports a maximum temperature of 400℃. For more details, please contact us or download the catalog.

  • Heating device
  • Furnace

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Oxygen partial pressure & atmosphere control test furnace 'SiOAF-200C'

Oxygen partial pressure can be controlled from high concentration to extremely low concentration!

The "SiOAF-200C" is an oxygen partial pressure and atmosphere control test furnace that allows temperature control, atmosphere control, oxygen partial pressure control, and programmable patterns via a touch panel, network, and computer. With a simple GUI, it is easy to operate temperature, atmosphere, and oxygen partial pressure program patterns from a touch panel or network PC. Up to three types of atmosphere gases can be connected, and the atmosphere can be adjusted according to any desired time program. 【Features】 ■ Programmable pattern control available ■ Feedback control available ■ Atmosphere adjustment possible with any time program ■ Compatible with uniform heating lengths from 120mm for a 1-zone control furnace to 250mm for a 3-zone control furnace *For more details, please refer to the catalog or feel free to contact us.

  • Analytical Equipment and Devices
  • Furnace

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Electric furnace

Electric furnace

The Funny eKCB series is a compact electric furnace designed for safety and ease of use. The furnace walls are insulated with four layers of high-quality insulating bricks, ceramic fiber, super boards, and silica boards to enhance thermal insulation. The heating element uses the globally reliable Swedish Kantal heater wire, which keeps the load per unit surface area low, ensuring durability and longevity. Additionally, the heater is stored in grooves using a spiral method, making it easy to load and unload products or replace wires. The control of firing temperature is managed by a programmable PID control, allowing for stable heating and maintenance, and making it easy to change programs, so you can freely create your own firing patterns. The upper door can stop at three points, allowing for effective dehumidification and cooling. With the optional reduction burner, authentic reduction atmosphere firing can also be achieved.

  • Electric furnace
  • Analytical Equipment and Devices
  • Other FA equipment
  • Furnace

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Industrial Furnace for Non-Ferrous Metals: Starting Carbon Neutrality with Energy-Saving Furnaces

It is possible to improve the melting unit by reviewing appropriate combustion, exhaust gas temperature, and material input control, among other factors.

At TOKAI, we offer a range of industrial furnaces, including aluminum melting holding furnaces. Among them, we are focusing on proposing industrial furnaces that can contribute to energy savings in order to achieve a decarbonized society. Because TOKAI is rooted in the energy business, we support companies in their energy reduction activities towards a decarbonized society. We will propose energy conversion to clean heat sources, hybridization of heat sources with added heaters, and energy-saving operational methods through innovative control! This document introduces carbon neutrality starting with energy-saving furnaces. There are many examples of energy savings achieved through simple changes in thinking, such as control innovations for reducing exhaust gas temperatures and the installation of automatic opening and closing lids at emission points. 【Energy-Saving Furnace - Introduction Content】 ■ Key points for decarbonization in foundries ■ What is the best energy mix? ■ Effectiveness of material preheating and exhaust gas utilization ■ Case studies of easy energy savings achieved through simple changes in thinking *For more details, please refer to the PDF document or feel free to contact us.

  • Industrial Furnace
  • Furnace

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Dehumidifier

Portable hair dryer the size of a cigarette pack.

A structure combining a NAFION® gas dryer and a desiccant canister. The gas sample flowing through the dryer only comes into contact with the NAFION tube, selectively removing moisture while preserving the gas components in the sample gas.

  • Analytical Equipment and Devices
  • Furnace

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Vacuum Furnace "Mini-BENCH-prism Ultra-High Temperature Experimental Furnace"

Maximum operating temperature 2000℃ Semi-automatic control Ultra-high temperature experimental furnace (carbon furnace, tungsten metal furnace) Compact and space-saving experimental furnace

◉ Maximum operating temperature Max2000℃ ◉ Customizable heater structure: - Cylindrical heater: for sintering samples inside a crucible (for solid, powder, granule, and pellet-shaped samples) - Flat heater: for sintering Φ1" to Φ6" wafers and small chip samples ◉ PLC semi-auto control All operations except temperature adjustment are performed via a touch panel screen. No need for cumbersome valve opening/closing or pump activation; the "vacuum/purge" cycle before sintering and "vent" after sintering are automatically sequenced with one button. ◉ Up to 3 MFCs for automatic flow control (or manual adjustment) ◉ APC automatic pressure control ◉ Ensuring safety during operation Monitoring for cooling water abnormalities, chamber temperature abnormalities, and overpressure abnormalities. Made of SUS, the robust water-cooled chamber can be safely used even during continuous operation at maximum temperature. ◉ Compact and space-saving Width 603 x Depth 603 x Height 1,160mm (*installed inside rotary pump housing) Various sample heating experiments, such as ultra-high temperature heating of small samples in laboratories and new material research and development, can be easily conducted. The main unit is compact yet can be used for research and development in various fields.

  • Heating device
  • Annealing furnace
  • Electric furnace
  • Furnace

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Annealing furnace "ANNEAL wafer annealing device"

Max 1000℃, MFC maximum 3 systems, APC pressure control, compatible with 4" or 6" substrates, high vacuum annealing equipment (<5 × 10^-7 mbar)

High-temperature processing up to 1000°C is possible with the heating stage installed in the high vacuum water-cooled SUS chamber. A heat shield is installed inside the chamber to ensure safety through interlock. The mass flow controller can be expanded to a maximum of three systems, allowing for firing operations at precisely adjusted process gas pressures (with the APC automatic process control system option). Additionally, there are many options available, including a front view port, dry scroll pump, special substrate holder, and additional thermocouples. The heating stage inside the chamber has three variations depending on the process gas atmosphere and treatment temperature: - Halogen lamp heater: Max 500°C - C/C composite heater: Max 1000°C (only in vacuum or inert gas) - SiC coating heater: Max 1000°C (in vacuum, inert gas, O2)

  • Annealing furnace
  • Heating device
  • Electric furnace
  • Furnace

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Annealing furnace "Mini-BENCH-prism ultra-high temperature experimental furnace"

Maximum operating temperature 2000℃ Semi-automatic control Ultra-high temperature experimental furnace (carbon furnace, tungsten metal furnace) Compact and space-saving experimental furnace

◉ Maximum operating temperature Max2000℃ ◉ Customizable heater structure: - Cylindrical heater: for sintering samples inside a crucible (for solid, powder, granule, and pellet-shaped samples) - Flat heater: for sintering Φ1" to Φ6" wafers and small chip samples ◉ PLC semi-auto control All operations except for temperature adjustment are performed on a touch panel screen. No need for cumbersome valve opening/closing or pump activation; the "vacuum/purge" cycle before sintering and "vent" after sintering are automatically sequenced with one button. ◉ Up to 3 MFCs for automatic flow control (or manual adjustment) ◉ APC automatic pressure control ◉ Ensuring safety during operation Monitoring for cooling water abnormalities, chamber temperature abnormalities, and overpressure abnormalities. Made of SUS, the robust water-cooled chamber can be safely used even during continuous operation at maximum temperature. ◉ Compact and space-saving Width 603 x Depth 603 x Height 1,160mm (*installed inside rotary pump housing) Various sample heating experiments, such as ultra-high temperature heating of small samples in laboratories and new material research and development, can be easily conducted. The main unit is compact yet suitable for research and development in a wide range of fields.

  • Heating device
  • Annealing furnace
  • Electric furnace
  • Furnace

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Uniform heating performance △t3~8℃! Stack type heating furnace.

【Up to 70% reduction in output】 Achieves uniform heating and stationary heating! With a clean environment, dust and foreign matter contamination is difficult, making it effective for small sensors. *Case studies available.

The stack furnace handled by Kyushu Nichisho is an effective heating method for lead frames, substrates after electronic component mounting, and small sensors mounted on transport carriers. (There are also proven results with ECUs and 600×600 size films.) By implementing inline processing, productivity efficiency is increased, and stable heating operation for 24 hours is possible. Additionally, it can accommodate a wide variety of industries, not only in the semiconductor and electronic component sectors but also in the automotive and food industries. The small volume of the heating chamber contributes to energy savings. 【Features】 ■ Supports inline processing with front and rear devices due to a wide variety of configurations ■ Achieves long-term stable reproducibility of temperature control ■ Reduces dust and vibration through stationary heating, improving product quality ■ Significantly reduces the installation floor space in factories by transitioning from 2D to 3D ■ Contributes to energy savings by greatly reducing the volume of the heating chamber *For more details, please refer to the external link page or feel free to contact us.

  • Heating device
  • Furnace

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[Melting Furnace Case] In-house production of test specimens and test pieces.

A melting furnace that can cast various shapes such as fracture test pieces, tensile test pieces, impact test pieces, luminescent spectroscopic test pieces, and other test pieces all in one machine.

The melting furnace for test specimens melts metals using induction (high-frequency induction heating) and then pours them into carbon molds, copper molds, or iron molds to shape them. By simply changing the molds, it is possible to produce test specimens of various shapes. It is also possible to manufacture from the chips generated during machining. All metals that can be melted using high-frequency induction heating or arc melting, such as iron-based and non-ferrous alloys, are included. Additional optional mechanisms can be installed according to the characteristics of other metals: - Vacuum pressurization during melting and pouring - Mold rotation - Inert gas replacement - Stirring in a vacuum - Addition of elements in a vacuum - Cooling mechanisms for molds - Arc melting 【Other Features】 - No need for large-scale capital investment: The compact size with caster mobility allows for use with only wiring and piping installation. - Flexible customization: We will conduct hearings regarding your desired metals, melting quantities, operations, and safety mechanisms, and propose appropriate equipment. We have many successful cases of custom machines, so please feel free to contact us. - Comprehensive after-sales support: We provide not only machine maintenance but also technical support in a partnership model after installation.

  • Casting Machine
  • Testing Equipment and Devices
  • Spectroscopic Analysis Equipment
  • Furnace

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Dry Clean High-Temperature Air Circulation Heat Treatment Furnace (SKH-700 Series)

A heat treatment furnace that achieves high-precision distribution not obtainable with an electric furnace.

Ideal for firing at high temperatures and heat resistance testing! Capable of operating at up to 750°C and continuously at 700°C. The adoption of hot air circulation achieves a high-precision temperature distribution that cannot be obtained with electric furnaces.

  • Heating device
  • Industrial Furnace
  • Drying Equipment
  • Furnace

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Drying High Temperature High Temperature Hot Air Circulation Type Heat Treatment Furnace (SKH-700 Series)

A heat treatment furnace that achieves high-precision distribution not attainable with an electric furnace.

Ideal for high-temperature firing and heat resistance testing! Capable of operating at up to 750°C and continuously at 700°C. The adoption of hot air circulation achieves a high-precision temperature distribution that cannot be obtained with electric furnaces.

  • Heating device
  • Industrial Furnace
  • Drying Equipment
  • Furnace

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Hybrid Material Compatible Turn Furnace for Semiconductors

Consistent production from material design. Supporting high-purity processes.

In the semiconductor industry, the contamination of impurities during the manufacturing process greatly affects the quality and performance of the products. Particularly in processes that use high-purity materials, the material of the furnace and the manufacturing process are crucial. Improper use of the furnace can lead to reduced yield and performance degradation of the products. Our multi-material compatible turn furnace supports high-purity processes through a consistent production system that encompasses everything from material design to mold fabrication, casting, machining, inspection, and delivery. 【Usage Scenarios】 - Melting of high-purity metals - Heat treatment in semiconductor manufacturing processes - Refining of special alloys 【Benefits of Implementation】 - Reduction of impurity contamination risks - Production of high-quality semiconductor products - Improved yield

  • Articulated Robot
  • Furnace

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OEM ODM Contract Manufacturing Case Example: Annealing Furnace

Examples of OEM, ODM, and contract manufacturing achievements for annealing furnaces.

Since its establishment, the company has developed and manufactured various devices such as refining machines, continuous weight reduction processing machines, and dyeing machines as a textile machinery manufacturer. In recent years, we have utilized the core technologies cultivated in textile machinery, including dyeing, cleaning, drying, and coating, along with manufacturing technologies for high-pressure vessels, vacuum vessels, and stirring tanks, to engage in small-batch production of diverse products. Moving forward, we will continue to respond to the needs of the times and our customers as a proposal-oriented company. 【Examples of Manufacturing Achievements】 Machine Speed: Regular use 40–120m/min Machine Composition: Furnace body, heating device, circulation fan, blow nozzle, fan heater storage chamber, furnace body front insulation opening and closing device

  • Contract manufacturing
  • Furnace

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